Unit of Epileptology and Experimental Neurophysiology, Fondazione Istituto Neurologico Carlo Besta, Milano, Italy ; Department of Neuroscience and Brain Technologies, Istituto Italiano di Tecnologia, Genova, Italy.
PLoS One. 2013 Oct 28;8(10):e78553. doi: 10.1371/journal.pone.0078553. eCollection 2013.
The passage of ions across biological membranes is regulated by passive and active mechanisms. Passive ion diffusion into organs depends on the ion-pairing properties of salts present in the serum. Potassium ions could affect brain activity by crossing the blood-brain barrier (BBB) and its accumulation in the extracellular cerebral space could precipitate seizures. In the present study, we analyze passive diffusion of a series of potassium salts in the in vitro isolated guinea pig brain preparation. Different potassium counter-anions confer ion-pairing and lipophilicity properties that modulate membrane diffusion of the salt. Extracellular recordings in different cortical areas demonstrated the presence of epileptiform activities that strongly relate to anion identity, following the qualitative order of the Hofmeister series. Indeed, highly lipophilic salts that easily cross the BBB enhanced extracellular potassium concentration measured by ion-selective electrodes and were the most effective pro-epileptic species. This study constitutes a novel contribution for the understanding of the potential epileptogenicity of potassium salts and, more generally, of the role of counter-anions in the passive passage of salts through biological membranes.
离子穿过生物膜是由被动和主动机制调节的。被动离子扩散进入器官取决于血清中存在的盐的离子配对特性。钾离子可以通过血脑屏障(BBB)进入大脑并在细胞外脑空间积累,从而引发癫痫发作。在本研究中,我们分析了一系列钾盐在体外分离的豚鼠脑制剂中的被动扩散。不同的钾反离子赋予离子配对和亲脂性特性,从而调节盐的膜扩散。不同皮质区域的细胞外记录显示存在癫痫样活动,这与阴离子的特性密切相关,遵循豪夫迈斯特系列的定性顺序。事实上,极易穿过 BBB 的高亲脂性盐会增强通过离子选择性电极测量的细胞外钾浓度,并且是最有效的致癫痫物质。这项研究为理解钾盐的潜在致癫痫性以及更一般地理解反离子在盐通过生物膜的被动传递中的作用提供了新的贡献。